Patents by Inventor Pinhas Yehuda Rosenfelder

Pinhas Yehuda Rosenfelder has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11947167
    Abstract: Fiber optic terminals, tools and methods for adjusting a split ratio of a fiber optic terminal are disclosed. In one embodiment, a tool for adjusting a split ratio of a fiber optic terminal includes an axle for insertion into a port of the fiber optic terminal, and a terminal engagement body disposed about the axle. The terminal engagement body includes a terminal engagement feature for engaging an alignment feature within the fiber optic terminal, wherein the axle is free to rotate with respect to the terminal engagement body, and a set-point indicator. The tool further includes an end piece coupled to the axle, and a plurality of set-point markers, wherein rotation of the end piece causes rotation of the axle and an alignment between one set-point marker of the plurality of set-point markers with the set-point indicator indicates the split ratio of the fiber optic terminal.
    Type: Grant
    Filed: May 20, 2022
    Date of Patent: April 2, 2024
    Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
    Inventors: Jody Todd Bliss, Douglas Llewellyn Butler, Agnivo Gosai, Martin Hempstead, Blake Paul Lee, William James Miller, Pinhas Yehuda Rosenfelder, Peter Gerard Wigley
  • Publication number: 20230168459
    Abstract: Field-configurable optical devices and methods are disclosed. In one example, a field-configurable optical device includes a housing defining an enclosure, an input port located at the housing, a pass-through port located at the housing, a plurality of output ports located at the housing, a splitter disposed within the enclosure, a plurality of couplers within the enclosure, each coupler including an input, a first output, and a second output. Each coupler has a power splitting ratio between the first output and the second output that is different from the other couplers. An input port fiber optic jumper assembly within the enclosure. A pass-through port fiber optic jumper assembly is within the enclosure. Moving the input port fiber optic jumper assembly and the pass-through port fiber optic jumper assembly from a first coupler to a second coupler of the plurality of couplers changes the power splitting ratio of the field-configurable optical device.
    Type: Application
    Filed: January 27, 2023
    Publication date: June 1, 2023
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira, Eric Stephan ten Have
  • Patent number: 11611817
    Abstract: Systems and assemblies for providing both cellular and passive optical local area network (POLAN) data signals along a single, shared fiber optic backbone within an in-building network architecture are provided herein. Systems include a headend unit that combines data signals from a cellular network and optical line terminal (OLT) onto the fiber optic backbone, which is then connected to a series of daisy-chained fiber optic assembly units. An example fiber optic assembly unit includes an asymmetric coupler that splits an input fiber optic signal from the fiber optic backbone into an output fiber optic signal and a throughput fiber optic signal that is fed back onto the continuing fiber optic backbone. The output fiber optic signal is filtered into dense wavelength-division multiplexing (DWDM) channels for providing data signals to a wireless or cellular network and further split into multiple passive optical network (PON) outputs for a local area network (LAN).
    Type: Grant
    Filed: September 10, 2021
    Date of Patent: March 21, 2023
    Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
    Inventors: Dror Harel, Baruh Hason, Pinhas Yehuda Rosenfelder, Yair Zeev Shapira
  • Publication number: 20220381989
    Abstract: Fiber optic terminals, tools and methods for adjusting a split ratio of a fiber optic terminal are disclosed. In one embodiment, a tool for adjusting a split ratio of a fiber optic terminal includes an axle for insertion into a port of the fiber optic terminal, and a terminal engagement body disposed about the axle. The terminal engagement body includes a terminal engagement feature for engaging an alignment feature within the fiber optic terminal, wherein the axle is free to rotate with respect to the terminal engagement body, and a set-point indicator. The tool further includes an end piece coupled to the axle, and a plurality of set-point markers, wherein rotation of the end piece causes rotation of the axle and an alignment between one set-point marker of the plurality of set-point markers with the set-point indicator indicates the split ratio of the fiber optic terminal.
    Type: Application
    Filed: May 20, 2022
    Publication date: December 1, 2022
    Inventors: Jody Todd Bliss, Douglas Llewellyn Butler, Agnivo Gosai, Martin Hempstead, Blake Paul Lee, William James Miller, Pinhas Yehuda Rosenfelder, Peter Gerard Wigley
  • Publication number: 20220086543
    Abstract: Systems and assemblies for providing both cellular and passive optical local area network (POLAN) data signals along a single, shared fiber optic backbone within an in-building network architecture are provided herein. Systems include a headend unit that combines data signals from a cellular network and optical line terminal (OLT) onto the fiber optic backbone, which is then connected to a series of daisy-chained fiber optic assembly units. An example fiber optic assembly unit includes an asymmetric coupler that splits an input fiber optic signal from the fiber optic backbone into an output fiber optic signal and a throughput fiber optic signal that is fed back onto the continuing fiber optic backbone. The output fiber optic signal is filtered into dense wavelength-division multiplexing (DWDM) channels for providing data signals to a wireless or cellular network and further split into multiple passive optical network (PON) outputs for a local area network (LAN).
    Type: Application
    Filed: September 10, 2021
    Publication date: March 17, 2022
    Inventors: Dror Harel, Baruh Hason, Pinhas Yehuda Rosenfelder, Yair Zeev Shapira
  • Patent number: 10659186
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Grant
    Filed: November 19, 2018
    Date of Patent: May 19, 2020
    Assignee: Corning Optical Communications LLC
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira
  • Publication number: 20190174206
    Abstract: Disclosed herein is a light launch device with improved usability and performance. In particular, the light launch device includes an internally housed launch cable and emission connector, a removable faceplate, alternating laser emission, and/or optimized pulse emission. The internally housed launch cable and emission connector facilitate portability and ease of use by consolidating the various components of the light launch device. The removable faceplate is positioned over the bulkhead connected to the input connector of a launch cable assembly to prevent access to the connection during normal use but selectively allowing access for maintenance or launch cable assembly replacement. The alternating laser emissions and/or optimized pulse emission decreases power consumption and/or maintains or improves cable tracing effectiveness.
    Type: Application
    Filed: August 22, 2018
    Publication date: June 6, 2019
    Inventors: Rami Anolik, Lior Assif, Pinhas Yehuda Rosenfelder, Carmi Shapiro, Refael Torika, Dayne Wilcox
  • Patent number: 10291323
    Abstract: Components, systems, and methods for determining efficiency of an optical signal source in distributed communication systems are disclosed. Environmentally induced variations in the performance of optical sources used to convert electrical signals to optical signals (such as laser diodes) at the transmitters within the system can be evaluated in real time. Steps can be taken to compensate for these variations. The efficiency of the laser diode can be measured and provided to receivers in the distributed communication system. The receiver may use information related to the slope efficiency measurement to adjust the gain of the receiving amplifiers to provide desired adjustments to the gain. Thus, the receivers in the remote units (RU) receive information about the slope efficiency of the laser diodes at the head end equipment (HEE) and the HEE receives information about the slope efficiency of the laser diodes at the RU.
    Type: Grant
    Filed: April 27, 2018
    Date of Patent: May 14, 2019
    Assignee: Corning Optical Communications LLC
    Inventors: Ofer Nisan, Rami Reuven, Pinhas Yehuda Rosenfelder, Ofer Shinaar
  • Publication number: 20190140764
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Application
    Filed: November 19, 2018
    Publication date: May 9, 2019
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira
  • Patent number: 10135561
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Grant
    Filed: July 20, 2017
    Date of Patent: November 20, 2018
    Assignee: Corning Optical Communications Wireless Ltd
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira
  • Patent number: 10103834
    Abstract: Embodiments of the disclosure relate to wireless distribution systems (WDSs) employing an optical star communications architecture based on quad small form-factor pluggable (QSFP) coarse wavelength division multiplexing (CWDM) transceivers. In one aspect, a selected QSFP CWDM transceiver among one or more QSFP CWDM transceivers wavelength multiplexes a plurality of downlink optical communications signals to generate a WDM downlink communications signal and provides WDM downlink communications signal to a selected remote unit branch among one or more remote unit branches in the WDS. In another aspect, the selected QSFP CWDM transceiver wavelength de-multiplexes a WDM uplink communications signal received from the selected remote unit branch into a plurality of uplink optical communications signals.
    Type: Grant
    Filed: September 27, 2017
    Date of Patent: October 16, 2018
    Assignee: Corning Optical Communications Wireless Ltd.
    Inventor: Pinhas Yehuda Rosenfelder
  • Publication number: 20180248629
    Abstract: Components, systems, and methods for determining efficiency of an optical signal source in distributed communication systems are disclosed. Environmentally induced variations in the performance of optical sources used to convert electrical signals to optical signals (such as laser diodes) at the transmitters within the system can be evaluated in real time. Steps can be taken to compensate for these variations. The efficiency of the laser diode can be measured and provided to receivers in the distributed communication system. The receiver may use information related to the slope efficiency measurement to adjust the gain of the receiving amplifiers to provide desired adjustments to the gain. Thus, the receivers in the remote units (RU) receive information about the slope efficiency of the laser diodes at the head end equipment (HEE) and the HEE receives information about the slope efficiency of the laser diodes at the RU.
    Type: Application
    Filed: April 27, 2018
    Publication date: August 30, 2018
    Inventors: Ofer Nisan, Rami Reuven, Pinhas Yehuda Rosenfelder, Ofer Shinaar
  • Patent number: 10003404
    Abstract: Components, systems, and methods for determining efficiency of an optical signal source in distributed communication systems are disclosed. Environmentally induced variations in the performance of optical sources used to convert electrical signals to optical signals (such as laser diodes) at the transmitters within the system can be evaluated in real time. Steps can be taken to compensate for these variations. The efficiency of the laser diode can be measured and provided to receivers in the distributed communication system. The receiver may use information related to the slope efficiency measurement to adjust the gain of the receiving amplifiers to provide desired adjustments to the gain. Thus, the receivers in the remote units (RU) receive information about the slope efficiency of the laser diodes at the head end equipment (HEE) and the HEE receives information about the slope efficiency of the laser diodes at the RU.
    Type: Grant
    Filed: March 3, 2016
    Date of Patent: June 19, 2018
    Assignee: Corning Optical Communications Wireless Ltd
    Inventors: Ofer Nisan, Rami Reuven, Pinhas Yehuda Rosenfelder, Ofer Shinaar
  • Publication number: 20180123721
    Abstract: Embodiments of the disclosure relate to wireless distribution systems (WDSs) employing an optical star communications architecture based on quad small form-factor pluggable (QSFP) coarse wavelength division multiplexing (CWDM) transceivers. In one aspect, a selected QSFP CWDM transceiver among one or more QSFP CWDM transceivers wavelength multiplexes a plurality of downlink optical communications signals to generate a WDM downlink communications signal and provides WDM downlink communications signal to a selected remote unit branch among one or more remote unit branches in the WDS. In another aspect, the selected QSFP CWDM transceiver wavelength de-multiplexes a WDM uplink communications signal received from the selected remote unit branch into a plurality of uplink optical communications signals.
    Type: Application
    Filed: September 27, 2017
    Publication date: May 3, 2018
    Inventor: Pinhas Yehuda Rosenfelder
  • Publication number: 20170324505
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Application
    Filed: July 20, 2017
    Publication date: November 9, 2017
    Inventors: PINHAS YEHUDA ROSENFELDER, CARMI SHAPIRA
  • Patent number: 9729267
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Grant
    Filed: December 8, 2015
    Date of Patent: August 8, 2017
    Assignee: Corning Optical Communications Wireless Ltd
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira
  • Publication number: 20160322781
    Abstract: An electronic apparatus includes first and second electronic devices, and first and second heat sinks for dissipating heat, wherein there is each of electrical conductivity between the first electronic device and the first heat sink, thermal conductivity between the first electronic device and the first heat sink, electrical conductivity between the second electronic device and the second heat sink, and thermal conductivity between the second electronic device and the second heat sink, wherein electrical conductivity is provided between the first and second heat sinks, and wherein thermal resistance is provided between the first and second heat sinks, so that the second heat sink remains cooler than the first heat, such as for protecting the second electrical device from the heat generated by the first electronic device.
    Type: Application
    Filed: July 12, 2016
    Publication date: November 3, 2016
    Inventors: Rami Anolik, Ami Hazani, Gavriel Magnezi, Pinhas Yehuda Rosenfelder
  • Publication number: 20160191165
    Abstract: Components, systems, and methods for determining efficiency of an optical signal source in distributed communication systems are disclosed. Environmentally induced variations in the performance of optical sources used to convert electrical signals to optical signals (such as laser diodes) at the transmitters within the system can be evaluated in real time. Steps can be taken to compensate for these variations. The efficiency of the laser diode can be measured and provided to receivers in the distributed communication system. The receiver may use information related to the slope efficiency measurement to adjust the gain of the receiving amplifiers to provide desired adjustments to the gain. Thus, the receivers in the remote units (RU) receive information about the slope efficiency of the laser diodes at the head end equipment (HEE) and the HEE receives information about the slope efficiency of the laser diodes at the RU.
    Type: Application
    Filed: March 3, 2016
    Publication date: June 30, 2016
    Inventors: Ofer Nisan, Rami Reuven, Pinhas Yehuda Rosenfelder, Ofer Shinaar
  • Publication number: 20160173223
    Abstract: An optical communications system includes an optical transmitter and an optical receiver optically coupled to an optical combiner/splitter, the combiner/splitter coupled to optical media; and, another optical transmitter and another optical receiver optically coupled to another optical combiner/splitter, the another combiner/splitter remotely coupled to the optical media; wherein the optical transmitter and the another optical transmitter are configured to transmit optical signals at substantially the same wavelength.
    Type: Application
    Filed: December 8, 2015
    Publication date: June 16, 2016
    Inventors: Pinhas Yehuda Rosenfelder, Carmi Shapira
  • Publication number: 20160143143
    Abstract: Optoelectronic modules and assemblies comprising optoelectronic modules are provided. An optoelectronic module includes an optoelectronic module printed circuit board, an optoelectronic component mounted to the optoelectronic module printed circuit board, an electrical connector affixed to the optoelectronic module printed circuit board, and a mounting bracket affixed to the optoelectronic module printed circuit board. The electrical connector is in electrical communication with an input of the optoelectronic component. The electrical connector is configured to removably plug into a mating electrical connector of a main printed circuit board. The mounting bracket includes an optoelectronic component engagement surface for engaging the optoelectronic component. The mounting bracket further includes a main printed circuit board engagement surface for engaging the main printed circuit board.
    Type: Application
    Filed: November 14, 2014
    Publication date: May 19, 2016
    Inventors: Eli Deri, Ami Hazani, Pinhas Yehuda Rosenfelder